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STUDY ON PREPARATION OF CERAMIC MATRIX COMPOSITE OF WC-Co ULTRAFINE POWDERS 被引量:1
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作者 曹立宏 时东霞 +1 位作者 欧阳世翕 关波 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 1995年第2期40-46,共7页
The W -Co compound precursor powders with an average particle sife of 60 nm were prepared by the chemical coprecipitation as the raw materials of Na2WO1 and CoCl2 and as the reagents of HCI and NH3 ?H2O. After re-duci... The W -Co compound precursor powders with an average particle sife of 60 nm were prepared by the chemical coprecipitation as the raw materials of Na2WO1 and CoCl2 and as the reagents of HCI and NH3 ?H2O. After re-ducing and carburizing the precursor powders by hydrogen gas and CO-CO 2 mixture gas. the WC-Co composite povvders ivith an average particle size of 0. 18/wi can be obtained. The purity and particle size of powders -were analysed by XRD and TEM. respectively. Meanwhile, the key factors to influ-ence the reducing and carburizing process of powders were also studied. 展开更多
关键词 wc-co ceramic matrix composite ul-trafine powders
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超细WC-Co硬质合金的烧结 被引量:7
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作者 陈亚军 邹慧 《中国民航学院学报》 2003年第1期14-18,共5页
利用超细材料烧结领域的一种新技术——脉冲电流烧结技术,对用高能球磨法制备出的WC—Co亚微米-纳米粉末进行烧结。样品采用JXA-840型扫描电子显微镜(SEM)等仪器进行分析和测试,结果表明:在脉冲电流烧结后获得超细WC-Co硬质合金,与传统... 利用超细材料烧结领域的一种新技术——脉冲电流烧结技术,对用高能球磨法制备出的WC—Co亚微米-纳米粉末进行烧结。样品采用JXA-840型扫描电子显微镜(SEM)等仪器进行分析和测试,结果表明:在脉冲电流烧结后获得超细WC-Co硬质合金,与传统的WC-Co硬质合金相比,超细WC-Co硬质合金具有更高的硬度(HRA92.5~94)和耐磨性,另外,通过实验获得了最佳的烧结工艺参数。 展开更多
关键词 烧结 性能 超细硬质合金 wc-co亚微米-纳米粉末
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Study on the diamond/ultrafine WC-Co cermets interface formed in a SPS consolidated composite 被引量:1
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作者 SHI Xiaoliang SHAO Gangqin DUAN Xinglong YUAN Runzhang 《Rare Metals》 SCIE EI CAS CSCD 2006年第2期150-155,共6页
Nanocrystalline WC-Co composite powder and coated tungsten diamond by using vacuum vapor deposition were consolidated by the spark plasma sintering (SPS) process to prepare diamond-enhanced WC-Co cemented carbide co... Nanocrystalline WC-Co composite powder and coated tungsten diamond by using vacuum vapor deposition were consolidated by the spark plasma sintering (SPS) process to prepare diamond-enhanced WC-Co cemented carbide composite materials. The interface microstructures between coated tungsten diamond and WC-Co cemented carbide matrix were investigated by scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDXS). The results showed that there is a transitional layer between the diamond and the matrix, in which the carbon content is 62.97wt.%, and the content of cobalt in the transitional zone is 6.19wt.%; the content of cobalt in the WC-Co cemented carbide matrix is 6.07wt.%, in which the carbon content is 15.95wt.%, and the content of cobalt on the surface of diamond is 7.30wt.%, in which the carbon content is 80.38wt.%. The transitional zone prevents the carbon atom of the diamond from spreading to the matrix, in which the carbon content does coincide with the theoretical value of the raw nanocomposite powders, and the carbon content forms a graded distribution among the matrix, transitional zone, and the surface of diamond; after the 1280℃ SPS consolidated process the diamond still maintains a very good crystal shape, the coated tungsten on the surface of the diamond improves thermal stability of the diamond and increases the bonding strength of the interface between the diamond and the matrix. 展开更多
关键词 DIAMOND nanocrystalline wc-co composite powders INTERFACE spark plasma sintering
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Abrasion Resistance Enhancement of Ultrafine-structured WC-Co Coating Fabricated by using in situ Synthesized Composite Powder 被引量:7
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作者 Haibin Wang Xiaoyan Song +2 位作者 Chongbin Wei Yang Gao Guangsheng Guo 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2013年第11期1067-1073,共7页
The ultrafine WC-Co composite powder was synthesized by a newly developed rapid route based on in situ reactions. By using the as-synthesized composite powder, the granulation processing was then carried out to prepar... The ultrafine WC-Co composite powder was synthesized by a newly developed rapid route based on in situ reactions. By using the as-synthesized composite powder, the granulation processing was then carried out to prepare the ultrafine-structured thermal spraying feedstock. The influences of the heat-treatment process on density of the feedstock powder, phase constitution and wear resistance of the resultant WC-Co coatings fabricated by high velocity oxy-fuel (HVOF) were investigated. The results showed that increasing the heating temperature and extending the holding time leaded to remarkable increase in the density and flowability of the feedstock powder. As a result, the decarburization of the in-flight particles could be decreased and the wear resistance of coating was significantly enhanced. The present study demonstrated that the developed techniques for the ultrafine powder and its thermal-sprayed coatings had very promising applications in scaling up to produce ultrafine-structured cermet coatings with excellent performance. 展开更多
关键词 wc-co composite powder DECARBURIZATION Density Ultrafine-structured coating Abrasion resistance
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PREPARATION OF WC-Co POWDER BY DIRECT REDUCTION AND CARBONIZATION 被引量:5
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作者 Zhonglai Yi Gangqin Shao Xinglong Duan Peng Sun Xiaoliang Shi Zhen Xiong Jingkun Guo 《China Particuology》 SCIE EI CAS CSCD 2005年第5期286-288,共3页
A new approach to produce superfine WC-Co powder by direct reduction and carbonization is proposed. Water-soluble salts containing W and Co were used as raw materials. Tungsten and cobalt oxide powder (CoWO4/WO3) wa... A new approach to produce superfine WC-Co powder by direct reduction and carbonization is proposed. Water-soluble salts containing W and Co were used as raw materials. Tungsten and cobalt oxide powder (CoWO4/WO3) was first formed by a spray-pyrolysis technique, which was then mixed with carbon black and converted to WC-Co composite powder at 950℃ for 4 h in N2 atmosphere. The resulting powder has a particle size of 100-300 nm. 展开更多
关键词 tungsten carbide-cobalt wc-co direct reduction and carbonization composite powder
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